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抑制端粒结合蛋白基因的表达可抑制番茄的种子和果实发育。

Suppression of telomere-binding protein gene expression represses seed and fruit development in tomato.

机构信息

Graduate School of Agricultural Science, Tohoku University, Aoba-ku, Sendai 981-8555, Japan.

出版信息

J Plant Physiol. 2011 Nov 1;168(16):1927-33. doi: 10.1016/j.jplph.2011.05.009. Epub 2011 Jun 16.

Abstract

Tomato (Solanum lycopersicum L.) plants were transformed with an antisense construct of a cDNA encoding tomato telomere-binding protein (LeTBP1) to describe the role of a telomere-binding protein at the whole plant level. Fruit size decreased corresponding to the degree of suppression of LeTBP1 expression. This inhibition of fruit development was likely due to a decrease in the number of seeds in the LeTBP1 antisense plants. Pollen fertility and pollen germination rate decreased in accordance with the degree of suppression of LeTBP1 expression. Ovule viability was also reduced in the LeTBP1 antisense plants. Although plant height was somewhat reduced in the antisense plants compared to the control plants, the number and weight of leaves were unaffected by LeTBP1 suppression. The number and morphology of flowers were also normal in the antisense plants. These indicate that reduced fertility in the antisense plants is not an indirect effect of altered vegetative growth. LeTBP1 expression was sensitive to temperature stress in wild-type plants. We conclude that LeTBP1 plays a critical role in seed and fruit development rather than vegetative growth and flower formation.

摘要

番茄(Solanum lycopersicum L.)植株被反义构建体转化,该构建体编码番茄端粒结合蛋白(LeTBP1)的 cDNA,以描述端粒结合蛋白在整个植物水平上的作用。果实大小的减小与 LeTBP1 表达的抑制程度相对应。这种果实发育的抑制可能是由于 LeTBP1 反义植物中种子数量减少所致。花粉育性和花粉萌发率随 LeTBP1 表达抑制程度的降低而降低。LeTBP1 反义植物中的胚珠活力也降低。尽管与对照植物相比,反义植物的株高略有降低,但 LeTBP1 抑制对叶片的数量和重量没有影响。花的数量和形态在反义植物中也正常。这表明,反义植物中生育力的降低不是由于营养生长改变的间接影响。LeTBP1 在野生型植物中对温度胁迫敏感。我们得出结论,LeTBP1 在种子和果实发育中起着关键作用,而不是在营养生长和花形成中。

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